赤霉素
生物
水稻
分生组织
腋芽
分蘖(植物学)
转基因水稻
发芽
植物
突变体
生长素
野生型
同源盒
基因
转基因
转录因子
细胞生物学
转基因作物
遗传学
组织培养
体外
作者
Shuen‐Fang Lo,Show-Ya Yang,Ku‐Ting Chen,Yue‐Ie Hsing,Jan A. D. Zeevaart,Liang‐Jwu Chen,Su‐May Yu
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2008-10-01
卷期号:20 (10): 2603-2618
被引量:520
标识
DOI:10.1105/tpc.108.060913
摘要
Gibberellin 2-oxidases (GA2oxs) regulate plant growth by inactivating endogenous bioactive gibberellins (GAs). Two classes of GA2oxs inactivate GAs through 2beta-hydroxylation: a larger class of C(19) GA2oxs and a smaller class of C(20) GA2oxs. In this study, we show that members of the rice (Oryza sativa) GA2ox family are differentially regulated and act in concert or individually to control GA levels during flowering, tillering, and seed germination. Using mutant and transgenic analysis, C(20) GA2oxs were shown to play pleiotropic roles regulating rice growth and architecture. In particular, rice overexpressing these GA2oxs exhibited early and increased tillering and adventitious root growth. GA negatively regulated expression of two transcription factors, O. sativa homeobox 1 and TEOSINTE BRANCHED1, which control meristem initiation and axillary bud outgrowth, respectively, and that in turn inhibited tillering. One of three conserved motifs unique to the C(20) GA2oxs (motif III) was found to be important for activity of these GA2oxs. Moreover, C(20) GA2oxs were found to cause less severe GA-defective phenotypes than C(19) GA2oxs. Our studies demonstrate that improvements in plant architecture, such as semidwarfism, increased root systems and higher tiller numbers, could be induced by overexpression of wild-type or modified C(20) GA2oxs.
科研通智能强力驱动
Strongly Powered by AbleSci AI